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温度环境对基于HNIW/FOX-7的塑料粘结炸药性能的影响。

The influence of temperature environmental on performance of HNIW/FOX-7 based PBXs.

作者信息

Zhou Mengnan, Chen Shusen, Chao Hui, Wang Na, Yan Bo, Lan Guanchao, Jin Shaohua

机构信息

School of Materials Science and Engineering, Beijing Institute of Technology, Beijing, 100081, China.

Research Institute, Gansu Yin Guang Chemical Industry Group Co. Ltd, Baiyin, 730900, China.

出版信息

Sci Rep. 2022 Mar 23;12(1):4988. doi: 10.1038/s41598-022-08752-6.

Abstract

During application, energetic materials may suffer different temperature environmental stimulation. In order to study the influence of temperature environmental on performance of HNIW/FOX-7 based PBXs, HNIW/FOX-7 based PBX modeling powders and PBX columns were treated by LT (low temperature), HT (high temperature), HLC (high-low temperature cycle) and HLS (high-low temperature shock). Then scanning electron microscope (SEM), infrared spectra (IR), X-ray diffraction (XRD) and differential scanning calorimetry (DSC) were used to study the variation of PBX modeling powders after LT, HT, HLC and HLS treatments; in addition, the mass, size and mechanical properties of PBX columns were characterized after different temperature adaptability treatments as well. The results indicate that the change ratios of mass and size of HNIW/FOX-7 based PBX columns are less than 1%, illustrating that mass and size of PBX columns are at acceptable level after different temperature adaptability treatments. The unevenness degree of the surface of PBX modeling powders followed the order of HLC > HT > LT > HLS, which agrees well with mass loss order. Moreover, IR and XRD results indicated that the molecular structure and crystal form of HNIW and FOX-7 did not change after different temperature adaptability treatments. Additionally, thermal stabilities of PBX modeling powders are decreased after different temperature adaptability treatments, among which HLS has the largest influence on HNIW/FOX-based PBX modeling powders. The compression strengths and elastic moduli of HNIW/FOX-based PBX columns are enhanced after different temperature adaptability treatments, among which the strength of PBX columns after HLC has the maximum increase, indicating that HLC has more significant effect on mechanical property.

摘要

在应用过程中,含能材料可能会受到不同温度环境的刺激。为了研究温度环境对基于HNIW/FOX-7的PBX性能的影响,对基于HNIW/FOX-7的PBX模拟粉末和PBX柱进行了低温(LT)、高温(HT)、高低温循环(HLC)和高低温冲击(HLS)处理。然后利用扫描电子显微镜(SEM)、红外光谱(IR)、X射线衍射(XRD)和差示扫描量热法(DSC)研究了LT、HT、HLC和HLS处理后PBX模拟粉末的变化;此外,还对不同温度适应性处理后的PBX柱的质量、尺寸和力学性能进行了表征。结果表明,基于HNIW/FOX-7的PBX柱的质量和尺寸变化率小于1%,说明不同温度适应性处理后PBX柱的质量和尺寸处于可接受水平。PBX模拟粉末表面的不均匀程度顺序为HLC>HT>LT>HLS,这与质量损失顺序一致。此外,IR和XRD结果表明,不同温度适应性处理后HNIW和FOX-7的分子结构和晶型没有变化。另外,不同温度适应性处理后PBX模拟粉末的热稳定性降低,其中HLS对基于HNIW/FOX的PBX模拟粉末影响最大。不同温度适应性处理后基于HNIW/FOX的PBX柱的抗压强度和弹性模量增强,其中HLC处理后PBX柱的强度增加最大,表明HLC对力学性能的影响更显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e66/8943028/bdf4ffcdeeb5/41598_2022_8752_Fig1_HTML.jpg

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